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Dynamic discharging characteristics simulation on solar heat storage system with spherical capsules using paraffin as heat storage material

机译:以石蜡为储热材料的球形胶囊太阳能储热系统动态排放特性模拟

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摘要

The dynamic characteristics of solar heat storage system with spherical capsules packed bed during discharging process are studied. According to the energy balance of solar heat storage system, the dynamic discharging processes model of packed bed with spherical capsules is presented. Paraffin is taken as phase change material (PCM) and water is used as heat transfer fluid (HTF). The temperatures of PCM and HTF, solid fraction and heat released rate are simulated. The effects of inlet temperature of HTF, flow rate of HTF and porosity of packed bed on the time for discharging and heat released rate are also discussed. The following conclusion can be drawn: (1) the heat released rate is very high and decreases rapidly with time during the liquid cooling stage, it is stable at the solidification cooling stage, then it decreases to zero at the solid cooling stage. (2) The time for complete solidification decreases when the HTF flow rate increases, but the effect is not so obvious when the HTF flow rate is higher than 13 kg/min; (3) compared to the HTF inlet temperature and flow rate, the influence of porosity of packed bed on the time for complete solidification is not so significant.
机译:研究了球形胶囊填充床太阳能蓄热系统在排放过程中的动态特性。根据太阳能储热系统的能量平衡,提出了球形胶囊填充床的动态排放过程模型。石蜡用作相变材料(PCM),水用作传热流体(HTF)。模拟了PCM和HTF的温度,固体分数和放热率。还讨论了HTF的入口温度,HTF的流量和填充床的孔隙率对排出时间和放热率的影响。可以得出以下结论:(1)在液体冷却阶段放热率很高,并且随时间迅速减小,在凝固冷却阶段稳定,然后在固体冷却阶段减小到零。 (2)当HTF流量增加时,完全凝固的时间减少,但是当HTF流量大于13kg / min时,效果不那么明显。 (3)与HTF入口温度和流速相比,填充床的孔隙率对完全固化时间的影响不是很大。

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